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In vitro study of dentin hypersensitivity treated by Nd:YAP laser and bioglass

机译:Nd:YAP激光和生物玻璃治疗牙本质过敏的体外研究

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Objectives. An ideal material has yet to be discovered that can completely treat dentin hypersensitivity. However, if a highly biocompatible material such as bioglass, could be melted by laser irradiation to achieve better sealing depth for dentinal tubules, it may subsequently bond to dentin structures under a physiological environment and offer a prolonged therapeutic effect. Methods. The authors used four types of energy parameters to melt the composition-modified bioglass. These four types were 30 Hz, 330 mJ/pulse (G + mode), 30 Hz, 160 mJ/pulse (G- mode), 10 Hz, 400 mJ/pulse (D+ mode), and 10 Hz, 200 mJ/pulse (D- mode). The temperature elevation, occlusive depth of bioglass, and phase changes in the bioglass after laser irradiation were evaluated by means of scanning electron microscope (SEM), thermometer, and X-ray diffract-ometer (XRD). Results. The occlusive depths of 2 and 10 μm in the dentinal tubules were achieved when the bioglass underwent 30 Hz, 160 mJ/pulse (G- mode) and 30 Hz, 330 mJ/pulse (G+ mode) of laser treatments, respectively. The bioglass experienced a temperature increase of less than 600℃, and no phase transformation was observed' after Nd:YAP laser irradiation. Significance. The melting point of a composition-modified bioglass could be reduced and its use plus Nd:YAP laser have the potential in clinical use to treat dentin hypersensitivity.
机译:目标。尚未发现可以完全治疗牙本质过敏的理想材料。但是,如果可以通过激光辐照融化高度生物相容性的材料(例如生物玻璃)以达到更好的牙本质小管密封深度,则随后它可能会在生理环境下与牙本质结构结合并提供延长的治疗效果。方法。作者使用四种类型的能量参数来熔化组成改性的生物玻璃。这四种类型分别为30 Hz,330 mJ /脉冲(G +模式),30 Hz,160 mJ /脉冲(G-模式),10 Hz,400 mJ /脉冲(D +模式)和10 Hz,200 mJ /脉冲(D-模式)。通过扫描电子显微镜(SEM),温度计和X射线衍射仪(XRD)评估温度升高,生物玻璃的闭塞深度以及生物玻璃在激光照射后的相变。结果。当生物玻璃分别接受30 Hz,160 mJ /脉冲(G-模式)和30 Hz,330 mJ /脉冲(G +模式)的激光处理时,在牙本质小管中的阻塞深度分别为2和10μm。生物玻璃的温度升高不到600℃,并且在Nd:YAP激光照射后没有观察到相变。意义。可以降低成分修饰的生物玻璃的熔点,将其与Nd:YAP激光一起使用在临床上具有治疗牙本质过敏的潜力。

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